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Your Job: In this PhD project, you will shape the future of power system security by harnessing exascale computing. Your research will focus on understanding and enhancing grid resilience under
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minimum tax-free annual living allowance of £20,780 (2025/26 UKRI rate). Additional project costs will also be provided. Overview Research Project Critical infrastructure systems, such as power grids
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motivated candidate for a full-time (100%) PhD position for 3 years as part of the research project Coordination Framework for Voltage and Reactive Power Control in the Nordic Power Grid (CoordQ). You will
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Systems. The project is sponsored by UKRI with the aim to conduct modelling, analysis and optimisation of smart power distribution grids and integrated power and transportation networks. In collaboration
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heating and cooling, storage, and local electricity grids. A key goal is to translate methodological innovations in deep learning into practical tools for sustainable urban energy systems, supporting
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or assignments, with primary responsibility for determining objectives of work Resolve complex issues to enable states, regulators, regional grid operators and utilities to develop and implement guidance
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solutions that extend the operational life of devices and reduce environmental impact, applicable to areas like smart grids, electric vehicles, and portable electronics. Research Focus Areas: Power-Aware
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energy use and 40% of energy-related CO2 emissions, making it a key target for decarbonisation. A promising option to store energy and support a low-carbon grid is thermochemical energy storage (TCES
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entire power grids. Extreme events with low return periods are especially important for power plants where 1 in 10,000 year risk levels are required to be mitigated for. Through collaboration with EDF
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. The developed methods will be evaluated in representative energy applications, including renewable energy systems (e.g., wind turbines), smart grids, and emerging electrified platforms such as electric ships